Design of Coal Equipment Life Cycle Reliability Management System

2014 ◽  
Vol 571-572 ◽  
pp. 507-510
Author(s):  
Xian Min Ma ◽  
Bao Xu

A new coal mine equipment management system based on network is proposed in the paper. The principle of the mine production equipment service life cycle is introduced, the maintenance management information system framework and function modules are designed which combines with the characteristics of the mine production equipment to equipment status. The design of the device information management, spare parts management, state management, maintenance management and ledger management model selection are described in detail, and then the mine production management system based on the equipment life cycle prediction is build. The research result shows the coal mining equipment management system based on network can achieve long-term optimizing maintenance resources, and reduce maintenance costs and improve the efficiency of coal production and enterprise management level.

2019 ◽  
Vol 38 ◽  
pp. 92-99 ◽  
Author(s):  
R. Accorsi ◽  
A. Gallo ◽  
A. Tufano ◽  
M. Bortolini ◽  
S. Penazzi ◽  
...  

2021 ◽  
Vol 4 (1) ◽  
pp. 5-13
Author(s):  
Erliang Huang

Objective: To establish a total life cycle information management system for medical equipment based on our hospital’s actual situation. Methods: Per the definition of the total life cycle for the particular item of medical equipment, the function modules were designed and distributed according to different staff postings and then implemented on the WeChat public account-a series of API and services to develop custom features, a mobile app, and a computer web browser. Results: After implementation, the system can cover a series of management stages of the entire life cycle for medical equipment and the information exchanged among various stages. The relevant staff in different posts can operate the medical equipment management information on any of the three platforms. Conclusion: The improvement and efficiency aid staff in various settings in managing medical equipment and medical behaviors and patient safety is increased.


2019 ◽  
Vol 35 (S1) ◽  
pp. 37-38
Author(s):  
Ronald Alexis Rivas ◽  
Benicio Grossling ◽  
Pedro Galvan

IntroductionHealth technologies are fundamental in an operational health system. Medical devices, in particular, are crucial for disease prevention, diagnosis, treatment and rehabilitation. Recognizing this important role of health technologies, the World Health Assembly adopted, in May 2007, resolution WHA60.29, which addresses issues arising from inadequate installation and use of health technologies, as well as the need to formulate national strategies for the implementation of evaluation, planning, procurement and management systems for health technologies, in collaboration with personnel dedicated to the evaluation of health technologies and biomedical engineering. Maintenance management computer systems and software have evolved to help maintain medical equipment and control associated costs. A Computerized Maintenance Management System contains a database about an organization's maintenance operations.MethodsThe pilot study of observational and descriptive design will include all the medical/laboratory equipment that the Research Institute of Health Sciences (IICS) has that meets the inclusion criteria. The work will be carried out at the IICS, which aims to develop a computerized system for the maintenance of equipment that allows the linking of Quick Response (QR) codes to an application (WebApp) by means of cameras in smartphones, able to relate each QR code (attached to a medical/laboratory equipment) to its corresponding URL, and thus able to access all the technical information of each IICS team and therefore monitor their maintenance (preventive, corrective, predictive), history, spare parts, budgets, and technical specifications.ResultsWe have a database of all medical devices installed in the research center; we look forward to developing the program to include the data. The project focuses on the effective tool for decision making regarding the evaluation of the installed sanitary technology and those that will be installed.ConclusionsThe study proposes an effective solution for maintenance management, using data that supports administrative decisions regarding the acquisition of equipment in the future; that is, the system can contribute when it comes to evaluating installed and acquired sanitary technology.


2020 ◽  
Vol 8 (4) ◽  
pp. 1556-1562

To meet the requirements of 21st century, Kuwait ministry of public works have realized that they should use modern technologies and management system to face challenges of modern world. So, they maintenance Administration has launched a massive program which helps to meet development needs and helps to maintain the infrastructure’s sustainable growth. Thus, it is very necessary to develop appropriate bridge maintenance strategies to meet serviceability criteria and life cycle cost optimization of new bridges. And main purpose was to meet the requirements of development needs. Bridge management system (BMS) is a software or we can say a management tool which helps us to maintain or manage the bridges. These are the following main points which helps decision makers to make a best decision. Defines bridge condition, identifies bridge needs for like if we need replacement of any material or renovation can be identified by BMS, cost of bridge during maintenance and management of the bridge, identifies bridges for Replacement and rehabilitation programs (MR & R) and also identifies for the assessment of bridges. According to replacement and rehabilitation programs minor changes or maintenance of the bridges is done by Work management system (WBS). This paper proposes a framework that can enhance the effectiveness of Kuwait’s Integrated Maintenance Management System (KIMMS). A survey for bridge contractors around the world was used as the research method for this study. This contains questions regarding their current bridge management system (BMS) and what are the input and output parameters it considers in the process. BIM (Bridge information modeling) technology is used to reduce the errors in designing and construction of the bridges by using BMS, BRIDGE OWNER may have a sustainability in the maintenance and enhancement of its bridge. We can determine the cash flow to be used in future for the replacement and repairment of bridge. It helps to adopt maintenance program to maintain life-cycle costs for the community. Helps to review the replacement and rehabilitation strategies. Helps to improve the economic life of infrastructure assets. After evaluating the BMSs used by the respondents, it turned out that the most effective procedure should have three main processes to be followed; maintenance planning, maintenance optimization, and maintenance decision support. Overall, the conceptualized framework considers an optimized procedure for maintenance management considering the balance in cost and quality of the process.


2014 ◽  
Vol 548-549 ◽  
pp. 1536-1542
Author(s):  
Zhi Liang Fang ◽  
Xing Jie Wu ◽  
Bai Xin Fang

Focused on the operation management of equipment, the workflow of NC equipment informatization management was deeply analyzed in this article. The functional structure of equipment management system was studied here. And, the equipment information management system was developed based on B/S structure. The system was applied to manage the basic information, Spare parts and Maintenance of the NC Equipment by way of information and automation, and realize the traceability of equipment maintenance and spare parts management throughout the whole Life Cycle. The alete integration of the Equipment Information Management System and other system, such as DNC, MES and ERP, was realized. And the integrated system effectively promoted the information interaction between layer of enterprise, workshop and equipment.


2013 ◽  
Vol 756-759 ◽  
pp. 1240-1243
Author(s):  
Li Fang Tang ◽  
Chuan Jin Wang

Based on Web of mine equipment maintenance management system,mainly to solve the mining equipment safety inspection,repair and test equipment,the existing problems of mine machinery and equipment maintenance is lack of effective management means information. Based on the introduction of mine equipment maintenance management system using database technology, network technology and the Web,this paper expounds the mine equipment maintenance management system structure,function,design,functions.


2021 ◽  
Vol 11 (3) ◽  
pp. 1333
Author(s):  
Sergio Gallego-García ◽  
Javier Gejo-García ◽  
Manuel García-García

Maintenance management plays a key role in many industries, as maintenance determines the availability of systems, influences their lifespan, impacts customer satisfaction, and as a result affects overall investment profitability. In this context, the aviation industry seeks models to improve efficiency. Researchers seek to provide conceptual models that help to shape the industry’s operations. Spare parts management plays a fundamental role in aviation, considering the predominance of planned maintenance. In this study, we analyzed the impact of the distribution network design for spare parts management and the fixed and dynamic planned maintenance intervals on the overall efficiency of an aircraft fleet. We present a conceptual model considering a variety of topics, such as distribution network design, that have been managed to a limited extent based on maintenance management. A simulation model was developed by applying the conceptual model for the aviation industry considering an aircraft fleet over its whole life cycle. The simulation model provides results concerning the impact of the distribution network, maintenance intervals, and other key factors on the efficiency of the aircraft fleet. The simulation enables a comparison of different distribution networks and maintenance strategies to decide which of them is the best fit for each spare part. The approach we propose enables companies and managers to make decisions informed by a centralized tool with all the relevant factors concerning the maintenance management of an aircraft fleet over its life cycle. As a result, managers are provided with a conceptual and simulation model for the assessment of future what-if scenarios based on aggregated databases from multiple sources without delays and with a dynamic vision of the relevant relationships between factors.


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